Solar thermal power station using independent cycle heat storage and electricity storage and cascade heat exchange evaporation

A cascade heat exchange and solar thermal technology, which is applied in the directions of solar thermal power generation, mechanical power generated by solar energy, machines/engines, etc., can solve problems such as not breaking through the system design concept, reduce the risk of solidification, improve power supply capacity, and improve The effect of the ability to compete

Active Publication Date: 2018-06-08
张建城
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, careful analysis reveals that these innovative projects are still fundamental, and most of them are individual improvements within the scope of traditional design, and have not yet broken through traditional system design concepts.

Method used

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  • Solar thermal power station using independent cycle heat storage and electricity storage and cascade heat exchange evaporation
  • Solar thermal power station using independent cycle heat storage and electricity storage and cascade heat exchange evaporation
  • Solar thermal power station using independent cycle heat storage and electricity storage and cascade heat exchange evaporation

Examples

Experimental program
Comparison scheme
Effect test

Embodiment Construction

[0032] plan 1

[0033]The trough heat storage and cascade evaporative heat generation are connected in series with the trough concentrators 1 to form a concentrating array like the existing solar thermal power station. Taking the "European trough" as an example, the concentrating array generally consists of 4 One or six independently driven concentrating single rows form a cycle, and its inlet and outlet are connected to the main pipeline of heat transfer oil. The difference in this scheme is that the solar receivers are connected in series or in parallel to form a concentrating array, and the solar energy of the concentrating array The outlet of the receiver 3 is connected to the inlet of the evaporator 20, the outlet of the evaporator 20 leads to the heat storage battery 21 or the heat storage battery 22, the outlet of the heat storage battery 21 or the heat storage battery 22 is connected to the high temperature power pump 23, and the outlet of the high temperature power pum...

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Abstract

The invention adopts independent cycle heat storage and electricity storage and cascade heat exchange and evaporation technology, uses molten salt or sulfur and quicksand as heat storage and heat transfer fluid, and combines with trough type, tower type and other solar concentrators to form a large-scale solar thermal Power station; the device adopts a new cascade evaporation technology while taking into account the integrated design of heat storage and power storage, which is not only beneficial to the standardization and scale of solar power generation equipment manufacturing, but also conducive to reducing the investment cost of the power station, improving its own power supply capacity and reducing operating costs. cost, significantly increase the number of hours of power generation, and improve the ability to compete with fossil energy power generation. The device belongs to the technical field of solar thermal power generation.

Description

technical field [0001] The invention adopts independent cycle heat storage and electricity storage and cascade heat exchange and evaporation technology, uses molten salt or sulfur and quicksand as heat storage and heat transfer fluid, and combines with trough type, tower type and other solar concentrators to form a large-scale solar thermal Power station; the device adopts a new cascade evaporation technology while taking into account the integrated design of heat storage and power storage, which is not only beneficial to the standardization and scale of solar power generation equipment manufacturing, but also conducive to reducing the investment cost of the power station, improving its own power supply capacity and reducing operating costs. cost, significantly increase the number of hours of power generation, and improve the ability to compete with fossil energy power generation. The device belongs to the technical field of solar thermal power generation. Background techniq...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F03G6/06
CPCY02E10/46
Inventor 张建城
Owner 张建城
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